Enercon's new Military Embedded Ethernet Switch | APC Technology Group

Enercon's new 26 port military embedded ethernet switch with integrated PHYs and magnetics

Managed military grade embedded ethernet switch designed for complex traffic applications featuring IEEE-1588 capabilities and Synchronous Ethernet (SyncE).

Enables fast and simple integration with reduction of design risks.

The MILTECH 9126 supports 24 x 1G copper ports and 2 x SGMII interfaces for direct connection to 2 x 1G Fiber ports. Designed for complex traffic applications featuring IEEE-1588 capabilities and Synchronous Ethernet (SyncE).

  • Product Type: Embedded ethernet board-level switch
  • Management: Managed
  • Ports: 24 x 1G Copper
                 2 x 1G Fiber
  • Connectors: Board-to-board: TE
  • Designed to Meet: MIL-STD-810 | MIL-STD-461 | IP67
  • Dimensions: 130mm X 87mm
  • Weight: 350g
  • Operating Temperature: -45°C to 85°C

With 24 triple speed (10/100/1000Mbps) ports +2 Interfacees SGMII the MILTECH 9126 features both L2/L3 network switching and static routing capabilities, including virtual LANS (VLANS), traffic prioritisation/QoS, IPv4/IPv6 support, and bandwidth aggregation. Supporting all the latest networking protocols for redundancy, security, multicast, and management.

With the industry's smallest footprint, the MILTECH 9126 measures only 130 x 87 mm to offer performance and comnbination of size, weight, and power (SWaP) in the industry, saving valuable real estate for devices that makes mobile platforms highly effective.

These advantages, when incorporated in a suitable enclosure to withstand MIL-STD-810F and MIL-STD-461E compliance, make the MILTECH 9126 the ultimate plug-and-play solution for advanced military applications.


For more than 30 years Enercon Technologies Europe AG has been a leader in the manufacture of high quality, rugged power supplies, design to MIL-Standards. Their strength lies in their ability to modifiy or customise power supplies to meet a customer’s exact requirements and specifications while remaining non-ITAR.

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